Plasmonic Properties of Aluminum Nanoparticles Fabricated by Nanosphere Lithography

A plasmon is the result of light interacting with the surface electrons in materials that meet specific dielectric requirements. Noble metals have long been used as plasmonic materials, yet other materials are capable of supporting surface plasmons. Recent work in the Van Duyne lab has shown that aluminum nanoparticles fabricated using a process known as nanosphere lithography (NSL) display plasmons throughout the UV-vis region. Both from experiment and theory, the presence of an oxide layer does not significantly affect their plasmonic properties. As a result, a promising plasmonic active UV material has been developed for use in surface enhanced spectroscopies (i.e., Raman) and in plasmonic devices.

 

 

George H. Chan, Jing Zhao, George C. Schatz, and Richard P. Van Duyne

Read other Highlights.

 

The Materials Research Science and Engineering Center (MRSEC) is supported by the National Science Foundation under NSF Award Number DMR-0520513. Any opinions, findings and conclusions or recommendations expressed in this material are those of the author(s) and do not necessarily reflect those of the National Science Foundation.
© 2008 Northwestern University